Description
Overview
Essential details:IS200AEADH3A interface board module
Product Description
The IS200AEADH3A is an interface board module in the GE Mark VIe family that connects and manages the control of wind turbine systems, as well as the control of other parts of the plant (BOP control). This module is designed to provide long-term stable operation in harsh industrial environments with high reliability, stability and scalability.
Technical specifications:
Brand: GE
Model: IS200AEADH3A
Application: Mark VIe Speedtronic system
Shape: Rectangular circuit board without front panel
Mounting: Usually installed in a 13 – or 21-slot VME rack system
Connectivity: Terminal tape with three vertical pins, twelve pins each, arranged in parallel for easy configuration
Product features:
Supports a variety of communication protocols and interface standards.
Enables fast and stable data transmission and control with GE devices.
Support a variety of data interfaces, such as RS232, RS485, CAN, etc.
Product parameter
Model: IS200AEADH3A
Brand: GE
Application: Mark VIe Speedtronic system
Shape: Rectangular circuit board without front panel
Mounting: Usually installed in a 13 – or 21-slot VME rack system
Connectivity: Terminal tape with three vertical pins, twelve pins each, arranged in parallel for easy configuration
Dimensions: 17.8cm wide x 33.02cm high
Number of relay channels: 12
Product type: Input terminal board
Stock status: In stock
Series: Drive control series
Operating temperature: 30 to 65 degrees Celsius
APPLICATION
Product features:
Multi-protocol support: Multiple communication protocols are supported to flexibly connect different types of devices and systems.
High performance: With high-speed data transmission capability and low latency, it is suitable for application scenarios that require real-time communication.
Configurability: Provides software or hardware interfaces, allowing users to configure and adjust according to specific requirements.
Reliability and security: Includes error detection, correction, and encryption to ensure the reliability and security of data transmission.
Application scenario:
Industrial automation: Connecting various devices and sensors on the production line to achieve automated control and data acquisition.
Automotive electronics: As part of the in-vehicle network, the various ECUs (electronic control units) of the vehicle are connected to achieve internal vehicle communication.
Embedded systems: Used as a core communication component in embedded systems that require efficient and reliable communication.
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